Analyzing and Implementing Energy Efficient Solutions

MAE 494/576
Ouvert Clôture le septembre 12, 2025
Contact principal
Arizona State University (ASU)
Tempe, Arizona, United States
Professor and Associate Dean
(7)
5
Chronologie
  • septembre 15, 2025
    Début de Expérience
  • septembre 24, 2025
    Project idea & team formation
  • octobre 25, 2025
    Literature review
  • novembre 25, 2025
    Potential energy/CO2 savings
  • décembre 3, 2025
    Summary & market analysis
  • décembre 6, 2025
    Fin de Expérience
Expérience
5 projets souhaités
Dates fixées par le Expérience
Compagnies privilégiées
N'importe où
Tout type de Compagnie
N'importe qu'elle industrie

Portée de Expérience

Catégories
Analyse des données Génie mécanique Gestion de projets d'ingénierie Lancement d'un produit ou d'un service Durabilité environnementale
Compétences
presentations energy efficiency analysis mechanical engineering industrial processes market size research innovation
Objectifs et capacités de Apprenant.es

Energy Efficiency is a combined senior technical elective and graduate course with primarily mechanical engineering students. The goal is to enable the students to analyze energy-efficiency opportunities in buildings and industrial processes, and to innovate and implement energy efficiency technologies.

Apprenant.es

Apprenant.es
Finissant
Niveau Avancé
70 Apprenant.es dans le programme
Projet
20 heures par Apprenant.e
Les Apprenant.es s'auto-attribuent
Équipes de 5
Résultats et livrables attendus

Deliverables are negotiable, and will seek to align the needs of the learners and the organization. All deliverables are in the form of presentations (recorded or live), except for the Summary Report which is a brief, 3-page written report.


Project idea & team formation

·      Is this idea innovative?

·      Does there appear to be a large market?

·      Does there appear to be substantial energy, cost, and/or CO2 savings?

Literature review

·      What is preventing this concept from being applied today?

·      Is there published research on this concept?

·      Is there any commercial activity, including patents, on this concept?

Potential energy/CO2 savings

·      Calculated annual energy savings for a single installation

·      Calculated annual CO2 savings for a single installation

Summary & market analysis

·       Calculated simple payback for a single installation

·       Estimated market size, either for the USA or globally

·       Overall summary of energy, cost, and CO2 savings

·       Commercialization potential

Summary Report

·      Brief introduction, including graphic

·      Brief overview of analysis or experiments

·      Overall summary of energy, cost, and CO2 savings

·      Commercialization potential

Chronologie du projet
  • septembre 15, 2025
    Début de Expérience
  • septembre 24, 2025
    Project idea & team formation
  • octobre 25, 2025
    Literature review
  • novembre 25, 2025
    Potential energy/CO2 savings
  • décembre 3, 2025
    Summary & market analysis
  • décembre 6, 2025
    Fin de Expérience

Exemples de projets

Learners in groups of 3-5 will work with your company to identify your needs and provide actionable recommendations, based on their in-depth research and analysis.


Project activities that learners can complete may include, but are not limited to: 

  • Applying fundamental concepts in thermodynamics, fluid mechanics, and heat transfer to real-world applications
  • Analyzing energy efficiency opportunities in existing residential and commercial buildings, and in industrial applications
  • Designing energy-efficient strategies for new residential and commercial buildings, and in industrial applications
  • Proposing and/or analyzing the potential of a new energy efficiency technology or strategy
  • Analyzing the application of a renewable energy technology for its potential to reduce CO2 emissions and save money


Recent projects have included the following:

  • Carbon Capture using Heat from Concentrated Solar Power (CSP)
  • Waste Heat Recovery In Foundries Using Thermogalvanic Cells
  • Optimization of Absorption Refrigeration Systems using Manifold Microchannel Heat Exchangers
  • Portable Refrigerator
  • Economics of peak shifting in ToU rate plans using battery storage
  • Reusing Waste Heat for a Water Heater
  • Smart Insulation
  • Improvement In Selection of Refrigerants
  • Magnetic Refrigeration Cycle
  • Numerical Modeling of PCM-Based Room Heating
  • Photovoltaic windows
  • Analysis of multi-stage compressor air conditioner during peak hours
  • Urban Heat Island



Critères supplé mentaires pour Compagnie

Les Compagnies doivent répondre aux questions suivantes pour soumettre une demande de jumelage pour cette Expérience:

  • Q1 - Case à cocher
     *
  • Q2 - Case à cocher
     *
  • Q3 - Case à cocher
     *
  • Q4 - Case à cocher
     *